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Callahan, G.D.; Ratigan, J.L.; Russell, J.E.; Fossum, A.F.
Union Carbide Corp., Oak Ridge, Tenn. (USA). Office of Waste Isolation1975
Union Carbide Corp., Oak Ridge, Tenn. (USA). Office of Waste Isolation1975
AbstractAbstract
[en] Prior to this investigation, the heat transport considered was only that of straight conduction. The waste container, air gap, and sleeve arrangement was considered to be a single, consistent, time-dependent, heat-generating unit in intimate contact with the salt. The conduction model does not accurately model the heat transfer mechanisms available. Thus radiation and combined radiation and convection must also be considered in the determination of the temperature field. As would be expected, the canister temperatures are higher for the case of radiation across the airgap than those that result from conduction when the canister is in intimate contact with the salt. For the radiation case, the canister temperatures rise rapidly to a temperature of approximately 1,1400F and maintain an almost steady state condition for one year whereafter the temperatures slowly decrease. The far field temperatures, near the pillar centerline, are essentially equivalent for all cases. As time proceeds, the far field temperatures of the conduction models are about 15% different
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31 Mar 1975; 68 p; Available from NTIS. $4.50
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